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Haq, M
Huber, D.M
Hooks, C.L
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Authors
Mallarino, A
Haq, M
Varsa, E.C
Hooks, C.L
Farquhar, D.A
Chong, S.K
Huber, D.M
Leuck, J.D
Smith, W.C
Christmas, E.P
Mallarino, A
Haq, M
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Type
Oral
Year
2015
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1. Phosphorus Loss with Runoff after Applying Fertilizer or Manure as Affected by the Timing of Rainfall

Public concerns about agriculture impacts on water quality and the likelihood of further government regulation have been increasing. Phosphorus usually is the nutrient that limits and controls algae growth and eutrophication in freshwater bodies. The uninformed public and many in regulatory agencies see reducing fertilization rates as an effective way of reducing nutrient loss from fields and improving water quality, especially when animal manure is applied. Soil testing for P is a useful, although...

2. Effect of Subsoil Tillage on Crops Grown in No-Till and Reduced Till Managements

Three different subsoil tillage experiments were conducted in southern Illinois on soils with root-limiting claypans that restrict crop growth. In the first experiment conducted at the SIU Belleville Research Center, subsoiling to 16 inches depth was compared to no subsoiling in a field that had been in long term, continuous no-till corn production. After 4 years of study, only small corn and soybean yield increases have observed with the tillage (2.0 bu/ac for corn and 1.0 bu/ac for soybeans) ....

3. Induced Manganese Deficiency in GM Soybeans

Glyphosate resistance in soybean and corn reduced manganese uptake and physiological efficiency. Applicatior~ of glyphosate immobilized manganese applied before, concurrent with, or within 6-8 days after the glyphosatc event. Inorganic sources of manganese (Cl, CO,, SO,) tank-mixed with gly-phosate were antagonistic and reduced herbicidal efficacy: ho~vever, antagonism was significantly influenced by glypllosate fonnulation. Glyphosate root exudates and plant deconlposition products can alter the...

4. Evaluation of Agricultural Lime and Pelleted Lime to Increase Soil pH and Crop Yield

Agricultural lime (aglime) is applied to increase pH of acidic soils to values optimum for crop production, and its effectiveness is affected mainly by it calcium carbonate (CaCO3) equivalent (CCE) and fineness. Availability and use of pelletized limestone has increased in recent years, but there is limited information about its effectiveness. Six field trials were established in 2014 at acidic Iowa soils (pH 4.9-6.1) with contrasting texture and organic matter. Treatments replicated three times... A. Mallarino, M. Haq